Sep 20 – 25, 2026
University of Graz
Europe/Vienna timezone

Adventitious carbon breaks symmetry in oxide contact electrification

Sep 24, 2026, 11:00 AM
30m
HS 12.01 (University of Graz)

HS 12.01

University of Graz

12 - Heizhaus, ground floor
4) Invited talk ÖAW - Young Academy ÖAW Young Academy

Speaker

Scott Waitukaitis (Institute of Science and Technology Austria)

Description

Insulating oxides are among the most abundant solid materials in the universe. Of the many ways in which they influence natural phenomena, perhaps the most consequential is their capacity to transfer electrical charge during contact—which occurs even between samples of the same oxide—yet the symmetry-breaking parameter that causes this remains unidentified. Here we show that adventitious carbonaceous molecules adsorbed from the environment are the symmetry-breaking factor in same-material oxide contact electrification (CE). We use acoustic levitation to measure charge exchange between a sphere and a plate composed of identical amorphous silicon dioxide (SiO2). Although charging polarity is random for co-prepared samples, we control it with baking or plasma treatment. Observing the charge-exchange relaxation afterwards, we see dynamics over a timescale of hours and connect this directly to the presence of adventitious carbon with time-of-flight mass spectrometry, low-energy ion scattering and infrared spectroscopy. Going further, we confirm that adventitious carbon can even determine charge exchange among different oxides. Our results identify the symmetry-breaking parameter that causes insulating oxides to exchange charge in settings ranging from desert sands to volcanic plumes, while simultaneously highlighting an overlooked factor in CE more broadly.

Author

Scott Waitukaitis (Institute of Science and Technology Austria)

Co-authors

Galien Grosjean (Autonomous University of Barcelona) Markus Ostermann Markus Sauer Michael Hahn Christian M. Pichler Florian Fahrnberger Felix Pertl Daniel M. Balazs Mason M. Link Seong H. Kim Devin L. Schrader Adriana Blanco Francisco Garcia Nicolas Mujica

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